摘要
背景:以前我们已经证明,重金属铅(Pb)的发育暴露会导致潜在的认知功能障碍、生物标记物的上调以及与τ和淀粉样蛋白通路相关的病理,然而,对α-突触核苷(α-Syn)的影响及其与这些途径的关系及其与认知性能的关系有待进一步阐明。目的:本研究探讨了在小鼠模型敲除(KO)和分化的人神经母细胞瘤SHSY5Y细胞系中,铅暴露对α-Syn通路的影响。方法:采用westernblot分析和RT-PCR方法,检测缺乏τ基因的老年小鼠生后铅暴露后和铅暴露后第3天和第6天分化的SHSY5Y细胞的τ和α-Syn通路中间产物的水平。结果:早期铅暴露伴随着小鼠体内α-Syn的潜在上调.此外,在体外接触铅还会导致α-Syn及其磷酸化形式的增加,以及糖原合成酶激酶3β(GSK-3β)和Caspase-3的增加。结论:环境因子可作为α-Syn及其相关激酶的潜在诱导剂,参与过磷酸化,可能暗示这两条神经退行性变途径的相互作用。
关键词: 阿尔茨海默病,α-Syn,GSK 3β,Caspase-3,铅(Pb),τ蛋白.
Current Alzheimer Research
Title:Influence of Early Life Lead (Pb) Exposure on α-Synuclein, GSK-3β and Caspase-3 Mediated Tauopathy: Implications on Alzheimer’s Disease
Volume: 15 Issue: 12
关键词: 阿尔茨海默病,α-Syn,GSK 3β,Caspase-3,铅(Pb),τ蛋白.
摘要: Background: Previously we have shown that developmental exposure to the heavy metal lead (Pb) resulted in latent cognitive impairment, upregulation of biomarkers and pathology associated with both the tau and amyloid pathways, however, the impact on Alpha Synuclein (α-Syn) and its relationship to these pathways and their connection to cognitive performance warrant further elucidation.
Objective: The present study determined the impact of developmental Pb exposure on the α-Syn pathways in a mouse model knock-out (KO) for murine tau gene and in differentiated human neuroblastoma SHSY5Y cell line exposed to a series of Pb concentrations.
Methods: Western blot analysis and RT-PCR were used to assess the levels of intermediates in the tau and α-Syn pathways following postnatal Pb exposure on aged mice lacking tau gene and in differentiated SHSY5Y cells on day 3 and day 6 after the Pb exposure had ceased.
Result: Early life Pb exposure is accompanied by latent up-regulation in α-Syn in these mice. Furthermore, prior exposure to Pb in-vitro also resulted in an increase in α-Syn, its phosphorylated forms, as well as an increase in glycogen synthase kinase 3β (GSK-3β) and Caspase-3.
Conclusion: An environmental agent can act as a latent inducer of both α-Syn and associated kinases that are involved in tau hyperphosphorylation and may allude to the interactive nature of these two neurodegenerative pathways.
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Cite this article as:
Influence of Early Life Lead (Pb) Exposure on α-Synuclein, GSK-3β and Caspase-3 Mediated Tauopathy: Implications on Alzheimer’s Disease, Current Alzheimer Research 2018; 15 (12) . https://dx.doi.org/10.2174/1567205015666180801095925
DOI https://dx.doi.org/10.2174/1567205015666180801095925 |
Print ISSN 1567-2050 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5828 |
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